Detection of butterfly fractures of long bones through multi-slice computed tomography and micro-computed tomography

IF 1.3 4区 医学 Q3 MEDICINE, LEGAL
Federica Trevissoi , Giorgia Franchetti , Paolo Fais , Andrea Gabbin , Elena Giovannini , Nicolò Martini , Maria Sech , Giorgia Todesco , Marco Pizzi , Giorgio De Conti , Chiara Giraudo , Guido Viel , Giovanni Cecchetto
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引用次数: 0

Abstract

Motor-vehicle accidents often result in lower limb injuries with biosseous fractures.

The present study aimed at comparing multi-slice computed tomography (MS-CT), micro-computed tomography (micro-CT) and external fractography for the analyses of experimentally produced biosseus leg fractures.

Briefly, 48 human legs amputated for medical reasons were defleshed and then experimentally fractured using a 3-point dynamic bending model (70,6 J of impact energy at the middle of the anterior surface of the tibia) producing 38 biosseous and 10 mono-osseous fractures with a total of 86 fractured bones. External fractography detected 63 (73,2%) “butterfly” fractures (24 (27,9%) complete and 39 (45,3%) incomplete), 14 (16,3%) “oblique” fractures, 6 (7,0%) “comminuted” fractures and 3 (3,5%) “transverse” fractures. Forty-three (43) of the 48 included legs displayed at least one butterfly fracture located at the tibia or fibula. MS-CT correctly detected and classified 16 complete and 20 incomplete butterfly fractures, failing to properly classify 27 fractures; 19 of these misclassifications led to an interpretative error on the trauma direction (i.e., 16 incomplete butterfly fractures classified as oblique fractures and 3 incomplete butterfly fractures classified as transverse). Micro-CT correctly detected and classified 22 complete and 37 incomplete butterfly fractures, failing to properly classify 4 fractures; two of these misclassifications led to an interpretative error on the trauma direction (i.e., two incomplete butterfly fractures classified as oblique fractures).

Although further studies evaluating a wider number of fractures and fracture patterns are required to drive any definitive conclusions, this preliminary experimental investigation showed that MS-CT and micro-CT represent useful tools for reconstructing the morphology of leg fractures and could be crucial for trauma analysis in the forensic context. MS-CT could be used as a screening tool, micro-CT as second level analysis and external/internal fractography as third level, confirmatory analysis.

通过多层计算机断层扫描和微型计算机断层扫描检测长骨蝶形骨折
本研究旨在比较多层计算机断层扫描(MS-CT)、微型计算机断层扫描(micro-CT)和外部骨折成像技术,以分析实验性腿部生物骨骨折。简而言之,对 48 条因医疗原因截肢的人腿进行脱骨处理,然后使用三点动态弯曲模型进行实验性骨折(胫骨前表面中部的冲击能量为 70.6 焦耳),共造成 38 处生物骨性和 10 处单骨性骨折,共计 86 处骨折。外部骨折造影检测出 63 处(73.2%)"蝶形 "骨折(24 处(27.9%)完全骨折和 39 处(45.3%)不完全骨折)、14 处(16.3%)"斜形 "骨折、6 处(7.0%)"粉碎性 "骨折和 3 处(3.5%)"横形 "骨折。在纳入的 48 条腿中,有 43 条腿至少有一处蝶形骨折位于胫骨或腓骨。MS-CT 正确检测并分类了 16 处完全蝶形骨折和 20 处不完全蝶形骨折,未能正确分类 27 处骨折;其中 19 处错误分类导致创伤方向解释错误(即 16 处不完全蝶形骨折被分类为斜形骨折,3 处不完全蝶形骨折被分类为横形骨折)。显微计算机断层扫描正确检测并分类了 22 处完全蝶形骨折和 37 处不完全蝶形骨折,但未能正确分类 4 处骨折;其中 2 处错误分类导致创伤方向解释错误(即 2 处不完全蝶形骨折被分类为斜向骨折,3 处不完全蝶形骨折被分类为横向骨折)、尽管需要对更多的骨折和骨折形态进行进一步研究才能得出明确结论,但这项初步实验调查表明,MS-CT 和 micro-CT 是重建腿部骨折形态的有用工具,对于法医领域的创伤分析至关重要。MS-CT 可用作筛选工具,显微 CT 可用作第二级分析,外部/内部骨折造影可用作第三级确证分析。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Legal Medicine
Legal Medicine Nursing-Issues, Ethics and Legal Aspects
CiteScore
2.80
自引率
6.70%
发文量
119
审稿时长
7.9 weeks
期刊介绍: Legal Medicine provides an international forum for the publication of original articles, reviews and correspondence on subjects that cover practical and theoretical areas of interest relating to the wide range of legal medicine. Subjects covered include forensic pathology, toxicology, odontology, anthropology, criminalistics, immunochemistry, hemogenetics and forensic aspects of biological science with emphasis on DNA analysis and molecular biology. Submissions dealing with medicolegal problems such as malpractice, insurance, child abuse or ethics in medical practice are also acceptable.
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